Disclosed is a magnifier for use by blind or low vision users. The magnifier includes a camera, such as a CMOS image sensor, that displays enlarged images upon a screen for easy viewing. The magnifier further includes a handle that is pivotally interconnected to a housing to allow for handheld use in a variety of different configurations.
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2. A magnification device for use by blind or low vision users, the device comprising:
a housing having a rear face with a camera and a front face with a screen adapted to display images taken by the camera, the housing storing a camera and an image processor, the image processor being used to selectively enlarge the displayed images;
a handle pivotally connected to the housing, an opening formed within the handle whereby the camera can view images through the handle;
a battery positioned within the handle;
the handle having at least two discrete orientations relative to the camera, in one orientation, the handle and battery together function as a stand for the housing and the object to be viewed is positioned in front of the camera, in another orientation the housing and handle are brought into facing relation, with the object being viewed displayed on the screen.
1. A magnification device for use by blind or low vision users, the device comprising:
a housing having a rear face with a camera and a front face with a screen adapted to display images taken by the camera, the housing storing an image processor and an image memory, the image processor being used to selectively enlarge the displayed images and change the color combinations associated with the displayed image, the displayed images being selectively stored within the image memory for later retrieval;
a handle pivotally connected to the housing, an opening formed within the handle whereby the camera can view images through the handle;
a battery positioned within the handle;
the handle having at least three discrete orientations relative to the camera, in the first orientation, the handle is positioned to be grasped by the user and the camera is positioned to view distant objects, in the second orientation, the handle is positioned as a stand for the housing and the object to be viewed is positioned in front of the camera, with the battery within the handle functioning as a counterweight, in the third orientation the housing and handle are brought into facing relation, the handle is positioned on top of the object being viewed and the object is displayed on the screen.
3. The magnification device as described in
4. The magnification device as described in
5. The magnification device as described in
6. The magnification device as described in
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This is a continuation of application Ser. No. 13/584,204, filed Aug. 13, 2012, and entitled “Multiposition Handheld Electronic Magnifier,” which is a continuation of application Ser. No. 12/478,993, filed Jun. 5, 2009, and entitled “Multiposition Handheld Electronic Magnifier,” now U.S. Pat. No. 8,264,598, issued Sep. 11, 2012, which is a continuation-in-part of application Ser. No. 12/235,182 filed on Sep. 22, 2008, and entitled “Portable Multi Position Magnifier Camera,” now U.S. Pat. No. 8,259,222, issued Sep. 4, 2012, which itself claims priority to provisional application Ser. No. 61/085,966, filed on Aug. 4, 2008, and entitled “Portable Multi Position Magnifier Camera.” The contents of all these applications are fully incorporated herein by reference.
1. Field of the Invention
This invention relates to a magnification device for individuals with low vision. More particularly, the present invention relates to a handheld magnification device that has a variety of discrete configurations.
2. Description of the Background Art
The use of electronic magnifiers for low vision users is known in the art. To date, however, these magnifiers have been heavy, bulky, and cumbersome to use. Additionally, many of these magnifiers have only one mode of operation, a mode that requires the user to hold the device at a fixed distance above the object being viewed. Prior art magnifiers also suffer from lack portability, which is problematic for users who may need assistance viewing objects when they are away from a traditional magnifier.
What is needed, then, is a magnifier with multiple configurations and modes of operation, whereby a user can use the magnifier by either holding the device relative to the object or by placing the device upon the object itself. There is an additional need for a magnifier that allows users to interact with the object while it is being magnified. There is also a need in the art for a magnifier that is handheld and easily transportable.
The portable multi position magnifier camera of the present invention is directed at fulfilling these needs.
It is therefore one of the objectives of this invention to allow a user to configure a magnifier camera into one of a variety of viewing modes so as to optimize the viewing of different sized objects at differing distances.
It is another objective of this invention to provide a magnifier camera that can either be held in front of an object to be viewed or positioned upon the object to be viewed.
It is yet another objective of this invention to provide a magnifier camera that has is hand-held, compact, and readily transportable.
The foregoing has outlined rather broadly the more pertinent and important features of the present invention in order that the detailed description of the invention that follows may be better understood so that the present contribution to the art can be more fully appreciated.
Additional features of the invention will be described hereinafter which form the subject of the claims of the invention. It should be appreciated by those skilled in the art that the conception and the specific embodiment disclosed may be readily utilized as a basis for modifying or designing other structures for carrying out the same purposes of the present invention. It should also be realized by those skilled in the art that such equivalent constructions do not depart from the spirit and scope of the invention as set forth in the appended claims.
For a fuller understanding of the nature and objects of the invention, reference should be had to the following detailed description taken in connection with the accompanying drawings in which:
Similar reference characters refer to similar parts throughout the several views of the drawings.
PARTS LIST
20 Magnifier Device
22 Housing
24 Handle
26 Front Face (Housing)
28 Back Face (Housing)
32 Peripheral Edge (Housing)
34 Sensor
36 Aperture (Housing)
38 Screen
42 Power Button
44 Camera Button
46 Zoom Button
48 Mode Control Button
52 LEDs
54 Focal Point
56 Object Being Viewed
58 Front Face (Handle)
62 Back Face (Handle)
64 Peripheral Edge (Handle)
66 Aperture (Handle)
68 Light Guides (Handle)
72 Opening (Handle)
74 Battery Door
76 Batteries
78 Light Chamber
82 Angled Surfaces (Chamber)
84 Battery Compartments
The present invention relates to a magnifier device for use by blind or low vision users. The magnifier includes a camera that can display enlarged images of target objects for viewing by the user. The magnifier device further includes a handle that is pivotally interconnected to a housing to thereby allow the device to be configured in a number of different configurations. The various features of the present invention, and the manner in which they interrelate, will be described in greater detail hereinafter.
With reference to
Housing 22 is defined by front and back faces (26 and 28, respectively) and an associated peripheral edge 32. With reference to
Stored images, or images currently viewed with sensor 34, can be displayed on screen 38. In the depicted embodiment, an LCD screen 38 is employed. Screen 38 is ideally recessed within front face 26 of housing 22. As such, a peripheral edge 32 is inwardly beveled. The LCD screen 38 is a full color video graphics array (VGA) display. Low-voltage differential signaling (LVDS) can be used to interconnect the LCD screen 38 to the FPGA and/or image buffer as noted above. This arrangement ensures a purely digital output on LCD screen 38 and also permits magnifier 20 to be used with an external monitor (not shown). Thus, by way of the LCD screen 38, objects within range of sensor 34 can be selectively displayed and digitally enlarged for the blind or low-vision user.
With reference to
Light sources are also mounted to back face 28 of housing 22. In the preferred embodiment, these light sources are light emitting diodes (LEDs) 52. Other light sources, however, such as cold cathode fluorescent lamps (CCFLs) can alternatively be used. With particular reference to
With reference again to
Handle 24 also includes an internal light chamber 78. Chamber 78 is most easily seen in the cross sectional view of
By pivoting handle 24 with respect to housing 22, magnifier 20 can be brought into a number of different orientations. The user can select the desired orientation for optimal viewing. The various magnifier orientations are described below in connection with
First Orientation
The first orientation of the magnifier 20 is depicted in
Second Orientation
The second orientation of the magnifier 20 is depicted in
Third Orientation
The present disclosure includes that contained in the appended claims, as well as that of the foregoing description. Although this invention has been described in its preferred form with a certain degree of particularity, it is understood that the present disclosure of the preferred form has been made only by way of example and that numerous changes in the details of construction and the combination and arrangement of parts may be resorted to without departing from the spirit and scope of the invention.
Murphy, Patrick, Goldenberg, Michael, Conard, Todd, Tunkis, Waldemar H., Rodriguez, Carlos M., McDaniel, Jeffery
Patent | Priority | Assignee | Title |
9998672, | Aug 04 2008 | Freedom Scientific, Inc. | Multiposition handheld electronic magnifier |
Patent | Priority | Assignee | Title |
3252067, | |||
3253529, | |||
3850523, | |||
4362806, | Feb 02 1979 | Eastman Kodak Company | Imaging with nonplanar support elements |
4456931, | Oct 31 1980 | Nippon Kogaku K.K. | Electronic camera |
4799049, | Jan 25 1985 | AVILA, HAROLD | Image position control |
5335192, | Apr 11 1990 | Nippon Steel Corporation | Portable computer with pivotally mounted cover |
5633674, | Dec 12 1994 | VISION TECHNOLOGY, INC | Hand-held reading device for the visually impaired |
5703661, | May 29 1996 | Amtran Technology Co., Ltd. | Image screen adjustment apparatus for video monitor |
5717964, | Feb 18 1997 | Eastman Kodak Company | Camera exposure apparatus having flash tubes for correcting for overexposure |
5739859, | Oct 21 1994 | Sony Corporation | Video camera with a rotatably mounted viewfinder |
5748228, | May 27 1994 | Fuji Xerox Co., Ltd. | Image information enlarging reading device |
5815735, | Apr 29 1996 | HEWLETT-PACKARD DEVELOPMENT COMPANY, L P | Portable computer with removable display screen using removably mateable connectors to form the sole supporting interconnection between the computer base portion and display screen structure |
5893651, | Dec 24 1996 | Sony Corporation | Camera system and camera lens control unit |
6636359, | Jun 08 2000 | TDG Acquisition Company, LLC | Two stage optical magnification and image correction system |
6642505, | Jul 16 1999 | SEIKO PRECISION INC | Reflection-type optical sensor |
6767107, | May 09 2000 | Arista Interactive LLC | Light apparatus for illuminating a compact computer video screen |
6809741, | Jun 09 1999 | International Business Machines Corporation | Automatic color contrast adjuster |
6956616, | Apr 05 2001 | VERSEYE, INC | Apparatus for facilitating viewing by human eye |
6971600, | Jun 30 2003 | Heligear Engineering (H.K.) Co., Ltd. | Oscillation mechanism for fishing reel |
6971700, | Jul 02 2004 | GRUPO ANTOLIN-INGENIERIA, S A | Motor vehicle seat |
6977676, | Jul 08 1998 | Canon Kabushiki Kaisha | Camera control system |
7106357, | Aug 27 2001 | Olympus Optical Co., Ltd. | Portable information terminal device having camera feature |
7119319, | Apr 08 2004 | Canon Kabushiki Kaisha | Solid-state image sensing element and its design support method, and image sensing device |
7170557, | Mar 26 2002 | Eastman Kodak Company | Modular digital imaging system |
7172304, | May 26 2005 | FREEDOM SCIENTIFIC, INC | Illuminator having forward lighting |
7172305, | May 26 2005 | FREEDOM SCIENTIFIC, INC | Magnifier having slideably mounted camera |
7295244, | Mar 26 2002 | Monument Peak Ventures, LLC | System for capturing and archiving motion video segments |
7336295, | Jun 06 2003 | Elmo Co., Ltd. | Video magnifier |
8115831, | Aug 04 2008 | FREEDOM SCIENTIFIC, INC | Portable multi position magnifier camera |
8264598, | Sep 22 2008 | FREEDOM SCIENTIFIC, INC | Multiposition handheld electronic magnifier |
20010002850, | |||
20020063791, | |||
20020071047, | |||
20030040346, | |||
20030063214, | |||
20030210340, | |||
20040141062, | |||
20040246340, | |||
20050002666, | |||
20050062847, | |||
20050141099, | |||
20050162512, | |||
20050198779, | |||
20060018508, | |||
20060034601, | |||
20060158427, | |||
20060268569, | |||
20070018919, | |||
20070035853, | |||
20070040907, | |||
20070223906, | |||
20070263014, | |||
20070273708, | |||
20070296845, | |||
20080165141, | |||
20090059038, | |||
20090160996, | |||
20100026854, | |||
20100026855, | |||
20100073545, | |||
D454146, | Nov 13 2000 | PHC HOLDINGS CO , LTD ; PANASONIC HEALTHCARE HOLDINGS CO , LTD | Digital still camera |
D488440, | Jan 21 2003 | FUJIFILM Corporation | Charger for digital cameras |
D503944, | Jun 17 2003 | Elmo Co., Ltd. | Video magnifier |
D614220, | Sep 22 2008 | FREEDOM SCIENTIFIC, INC | Portable multi position magnifier camera |
EP1921838, | |||
GB2403370, | |||
JP2003051971, | |||
WO2007021478, |
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